H 2 AC Rooftop Unit featuring esync Integration Technology

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1 & Water Integrated Solutions H 2 AC Rooftop Unit featuring esync Integration Technology NOTE: Unit shown with optional louvered coil protection guard. With ClearControl Nominal Size: 10 Ton [35.1 kw] ASHRAE Compliant Models RHEEM HIGH EFFICIENCY TANKLESS OR COMMERCIAL TANK RECOMMENDED FOR THE GREATEST ENERGY SAVINGS POTENTIAL. Rheem Commercial Water Storage Tank: 2" fittings 80 or 115 Gallon Capacities available FORM NO. S REV. 2

2 Table of Contents TABLE OF CONTENTS Unit Features & Benefits Model Number Identification...10 Options...11 Selection Procedure...12 esync Integration Technology Cost Savings Example...13 esync Integration Technology Typical Piping Example...14 esync Integration Technology Typical Piping Maximum Length...15 esync Integration Technology Piping Equivalent Length...16 General Data RLHL- Series...17 General Data Notes...18 Gross Systems Performance Data RLHL- Series...19 Airflow Performance RLHL- Series...20 Electrical Data RLHL- Series...21 Electric Heater Kits...22 Dimensional Data Accessories Mechanical Specifications Wiring Diagrams Limited Warranty

3 Unit Features & Benefits RLHL-C STANDARD FEATURES INCLUDE: R-410A HFC refrigerant Complete factory charged, wired and run tested Scroll compressors with internal line break overload and high-pressure protection Single stage compressor Downflow only TXV refrigerant metering system High Pressure and Low Pressure/Loss of charge protection standard on all models Solid Core liquid line filter drier Single slab, single pass designed evaporator and condenser coils facilitate easy cleaning for maintained high efficiencies Cooling operation up to 125 degree F ambient Foil faced insulation encapsulated throughout entire unit minimizes airborne fibers from the air stream Hinged major access door with heavy-duty gasketing, 1/4 turn latches and door retainers Slide Out Indoor fan assembly for added service convenience Powder Paint Finish meets ASTMB117 steel coated on each side for maximum protection G90 galvanized One piece top cover and one piece base pan with drawn supply and return opening for superior water management Forkable base rails for easy handling and lifting Single point electrical connections Internally sloped slide out condensate pan conforms to ASHRAE 62 standards High performance belt drive motor with variable pitch pulleys and quick adjust belt system Permanently lubricated evaporator and condenser motors Condenser motors are internally protected, totally enclosed with shaft down design 2 inch filter standard with slide out design 24 volt control system with resettable circuit breakers Colored and labeled wiring Copper tube/aluminum Fin indoor coils with all aluminum MicroChannel condenser coil Supplemental electric heat provides 100% efficient heating. Factory Installed ClearControl, a Direct Digital Control (DDC) and sensors which can connect to LonWorks or BACnet BAS systems for remote monitoring and control Pressure sensors provide refrigerant pressures, superheat, and subcooling on the ClearControl display H 2 AC Package Unit featuring esync Integration Technology includes water circulation pump, refrigerant-to-water heat exchanger, and esync Integration Technology control board for heat recovery during air conditioning mode to preheat potable water. 3

4 Unit Features & Benefits Rheem Package equipment is designed from the ground up with the latest features and benefits required to compete in today s market. The clean design stands alone in the industry and is a testament to the quality, reliability, ease of installation and ser - vice ability that goes into each unit. Outwardly, the large Rheem Commercial Series label ( 1 ) identifies the brand to the customer. The sheet-metal cabinet ( 2 ) uses nothing less than 18-gauge material for structural components with an underlying coat of G90. To ensure the leak-proof integrity of these units, the design utilizes a one-piece top with a 1/8" drip lip ( 3 ), gasketprotected panels and screws. The Rheem hail guard ( 4 ) (optional) is its trademark, and sets the standard for coil protection in the industry. Every Rheem package unit uses the toughest finish in the industry, using electro deposition bakedon enamel tested to withstand a rigorous 1000-hour salt spray test, per ASTM B117. Anything built to last must start with the right foundation. In this case, the foundation is 14-gauge, commercial-grade, fullperimeter base rails ( 5 ), which integrate fork slots and rigging holes to save set-up time on the job site. The base pan is stamped, which forms a 1-1/8" flange around the supply and return opening and has eliminated the worry of water entering the conditioned space ( 6 ). The drainpan ( 7 ) is made of material that resists the growth of harmful bacteria and is sloped for the latest IAQ benefits. Furthermore, the drain pan slides out for easy cleaning.the insulation has been placed on the underside of the basepan, removing areas that would allow for potential moisture accumulation, which can facilitate growth of harmful bacteria. All insulation is secured with both adhesive and mechanical fasteners, and all edges are hidden. During development, each unit was tested to U.L. 1995, ANSI 21.47, AHRI 340/360 and other Rheem-required reliability tests. Rheem adheres to stringent ISO 9002 quality procedures, and each unit bears the U.L. and AHRI certification labels located on the unit nameplate ( 8 ). Contractors can rest assured that when a Rheem package unit arrives at the job, it is ready to go with a factory refrigerant charge and quality checks. Access is granted with 1/4 turn fasteners and hinged access panels. Access to all major compartments is from the front of the unit, including the filter and electrical compartment, blower compartment, furnace section, and outdoor section. Each panel is permanently embossed with the compartment name (control/ filter access, blower access and electric heat access). Electrical and filter compartment access is through a large hinged access panel. The unit charging chart is located on the inside of the electrical and filter compartment door. Electrical wiring diagrams are found on the control box cover, which allows contractors to move them to more readable locations. To the right of the control box the model and serial number can be found. Having this information on the inside will assure model identification for the life of the product. The production line quality test assurance label is also placed in this location ( 9 ). The two-inch throwaway filters ( 10 ) are on a tracked system for easy removal and replacement

5 Unit Features & Benefits Inside the control box ( 11 ), each electrical component is clearly identified with a label that matches the component to the wiring diagram for ease of troubleshooting. All wiring is numbered on each end of the termination and color-coded to match the wiring diagram. The integrated furnace control, used to control furnace operation, incorporates a flashing LED trouble - shooting device. Flash codes are clearly outlined on the unit wiring diagram. The control transformer has a low voltage circuit breaker that trips if a low voltage electrical short occurs. There is a blower contactor, and contactor for each compressor. As part of the ClearControl system which allows real time monitoring and communication between rooftop units, the RLHL-C Package Air Conditioner has a Rooftop Unit Controller (RTU-C) factory mounted and wired in the control panel. The RTU-C is a solidstate microprocessor-based control board that provides flexible control and extensive diagnostics for all unit functions. The RTU-C through Proportional/Integral control algorithms perform specific unit functions that govern unit operation in response to: zone conditions, system temperatures, system pressures, ambient conditions and electrical inputs. The RTU-C features a 16 x 2 character LCD display and a five-button keypad for local configuration and direct diagnosis of the system ( 12 ). New features include a clogged filter switch (CFS), fan proving switch (FPS), return air temperature sensor (RAT), discharge air temperature sensor (DAT) and outdoor air temperature sensor (OAT). Freeze sensors (FS) are used in place of freezestats to allow measurement of refrigerant suction line temperatures. The RLHL-C Package Air Conditioner with the RTU-C is specifically designed to be applied in four distinct applications: The RLHL-C is compatible with a third party building management system that supports the BACnet Application Specific Controller device profile, with the use of a field installed BACnet Communication Module. The BACnet Communication Module plugs onto the unit RTU-C controller and allows communication between the RTU-C and the BACnet MSTP network. A zone sensor, a BACnet network zone sensor, a BACnet thermostat or DDC controller may be used to send the zone temperature or thermostat demands to the RTU-C. The BACnet Communication Module is compatible with MSTP EIA- 485 daisy chain networks communicating at 38.4 bps. It is compatible with twisted pair, shielded cables. The RLHL-C is compatible with a third party building management system that supports the LonMark Space Comfort Controller (SCC) functional profile or LonMark Discharge Air Controller (DAC) functional profile. This is accomplished with a field installed LonMark communication module. The LonMark Communication Module plugs onto the RTU-C controller and allows communication between the RTU-C and a LonWorks Network. A zone sensor, a LonTalk network zone sensor, or a LonTalk thermostat or DDC controller may be used to send the zone temperature or thermostat demands to the RTU-C. The LonMark Communication Module utilizes an FTT-10A free topology transceiver communicating at 78.8 kbps. It is compatible with Echelon qualified twisted pair cable, Belden 8471 or NEMA Level 4 cables. The Module can communicate up to 1640 ft. with no repeater. The LonWorks limit of 64 nodes per segment applies to this device. The RLHL-C is compatible with a programmable 24 volt thermostat. Connections are made via conventional thermostat screw terminals. Extensive unit status and diagnostics are displayed on the LCD screen of the RTU-C. The RLHL-C is compatible with a zone sensor and mechanical or solid state time clock connected to the RTU-C. Extensive unit status and diagnostics are displayed on the LCD screen of the RTU-C. 5

6 Unit Features & Benefits A factory or field installed Comfort Alert module is available for power phase-monitoring protection and additional compressor diagnostics. The alarms can be displayed on the RTU-C display, through the (BAS) network, or connected to the L-Terminal of a thermostat for notification. The RLHL-C has a special esync Integration Technology (potable water heating) control board ( 13 ) connected to the Rooftop Unit Controller (RTU-C) that allows potable water heat recovery during air conditioning mode. The esync Integration Technology control board adds pressure sensors to provide refrigerant pressures, superheat, and subcooling on the RTU-C LCD display. Whenever a call for cooling is present, the Rheem H 2 AC Rooftop Unit samples the water storage tank temperature (not included). If 13 the water temperature is below the setpoint, then heat that is normally rejected to the outdoor condenser coil is instead rejected to a heat exchanger in the Rheem H 2 AC Rooftop Unit to provide hot water. The setpoint has a default value of 95 F but self-adjusts to jobsite conditions to allow the maximum heat recovery. The preheated water leaving the storage tank for the Rheem H 2 AC Rooftop Unit must then be heated to the desired final temperature by a separate tank or tankless water heater. The RLHL-C includes a water circulation pump ( 14 ), a double wall, vented, refrigerant-to-potable water heat exchanger ( 15 ), a 3-way refrigerant valve ( 16 ) to switch between the outdoor condenser coil and the refrigerant-to-water heat exchanger, idle heat exchanger refrigerant pumpdown solenoid valves ( 17 ), and a water pressure sensor ( 18 ) to prevent operation of the water pump if water is not present. All are controlled by the esync Integration Technology con trol. The unit also includes an air vent ( 19 ) to automatically bleed air from the water lines, and a water leak detector ( 20 ) that will shut down water heating operation should a leak be detected and can send an alarm over a BAS network to notify others. In the event of this alarm, an optional field-installed water shut-off valve is available to disconnect the unit from the potable water supply. The rear of the unit includes potable water line connections to the water storage tank for the Rheem H 2 AC Rooftop Unit. For ease of installation, pipe unions ( 21 ) are provided to connect to 1-1/2" nominal copper water lines. The lines are provided with plastic covers to keep out contaminates until the system is installed

7 Unit Features & Benefits For added convenience in the field, a factory-installed convenience outlet and disconnect ( 22 ) are available. Low and High voltage can enter either from the side or through the base. Low-voltage connections are made through the 22 low-voltage terminal strip. For ease of access, the U.L.-required low voltage barrier can be temporarily removed for low-voltage termination and then reinstalled. The high-voltage connection is terminated at the number 1 compressor contactor. The suggested mounting for the field-installed disconnect is on the exterior side of the electrical control box. To the right of the electrical and filter compartment are the externally mounted gauge ports, which are permanently identified by embossed wording that clearly identifies the compressor circuit, high pressure connection and low pressure connection ( 23 ). With the gauge ports mounted 23 externally, an accurate diagnostic of system operation can be performed quickly and easily. Brass caps on the Schrader fitting assure that the gauge ports are leak proof. The blower compartment is to the right of the gauge ports and can be accessed by 1/4 turn fasteners. To allow easy maintenance of the blower assembly, the entire assembly easily slides out by removing two 3/8" screws from the blower retention bracket. The adjustable motor pulley ( 24 ) can easily be adjusted by loosening the bolts on either side of the motor mount. Removing the bolts allows for easy removal of the blower pulley by pushing the blower assembly up to loosen the belt. Once the belt is removed, the motor sheave can be adjusted to the desired number of turns, ranging from 0 to 6 turns open. Where the demands for the job require high static, Rheem has highstatic drives available that deliver nominal airflow up to 2" of static. By referring to the airflow performance tables listed in the installation instructions, proper static pressure and CFM requirements can be dialed in. The scroll housing ( 25 ) and blower scroll provide quiet and efficient airflow. The blower sheave is secured by an H bushing which firmly secures the pulley to the blower shaft for years of trouble-free operation. The H bushing allows for easy removal of the blower pulley from the shaft, as opposed to the use of a set screw, which can score the shaft, creating burrs that make blower-pulley removal difficult

8 Unit Features & Benefits Also inside the blower compart ment is the low-ambient control ( 26 ), low-pressure switch ( 27 ), high-pressure switch ( 28 ) and freeze sensor ( 29 ). The lowambient control allows for operation of the compressor down to 0 degrees ambient temperature by cycling the outdoor fans on high pressure. The high-pressure switch will shut off the compressors if pressures in excess of PSIG are detected, as may occur if the outdoor fan motor fails. The low-pressure switch shuts off the 26 compressors if low pressure is detected due to loss of charge. The freeze sensor protects the compressor if the evaporator coil gets too cold (below freezing) due to low airflow and allows monitoring of the suction line temperature on the controller display. Each factory-installed option is brazed into the appropriate high or low side and wired appropriately. Use of polarized plugs and Schrader fittings allow for easy field installation. Inside the blower compartment the evaporator can also be viewed. The evaporator uses enhanced fin technology for maximum heat transfer. The TXV metering device assures even distribution of refrigerant throughout the evaporator. Wiring throughout the unit is neatly bundled and routed. Where wire harnesses go through the condenser bulkhead or blower deck, a molded wire harness assembly ( 30 ) provides an air-tight and water-tight seal, and provides strain relief. Care is also taken to tuck raw edges of insulation behind sheet metal to improve indoor air quality. The furnace compartment contains the latest furnace technology on the market. The draft inducers ( ) draw the flame from the Rheem exclusive in-shot burners ( 32 ) into the aluminized tubular heat exchanger ( 33 ) for clean, efficient gas 37 heat. Stainless steel heat exchangers can be factory installed for those applications that have high fresh-air requirements, or applications in corrosive environments. Each furnace is equipment with a two-stage gas valve ( 34 ), which provides two stages of gas heat input. The first stage operates at 50% of the second stage (full fire). 81% steady state efficiency is maintained on both first and 35 second stage by staging 34 the multiple inducers to optimize the combustion airflow 33 and maintain a near stoichiometric burn at each stage. The heating compartment contains the latest electric furnace technology on the market. The 100% efficient electric furnace can be factory-installed or easily field-installed. Built with easeof-installation in mind, the electric furnace is completely wired for slide-in, plug-and-play installation in the field. With choices of up to six kilowatt offerings, the contractor is assured to get the correct amount of heating output to meet the designed heating load. Power hook-up in the field is easy with single-point wiring to a terminal block ( 31 ) and a polarized plug for the low-voltage connection ( 32 ). The electric furnace comes with fuses for the unit ( 33 ) and for the electric furnace ( 34 ), and is UL certified ( 35 ). The electric heating elements are of a wound-wire construction ( 36 ) and isolated with ceramic bushings. The limit switch ( 37 ) protects the design from over-temperature conditions. 30 8

9 Unit Features & Benefits The compressor compartment houses the heartbeat of the unit. The scroll compressor (39) is known for its long life, and for reliable, quiet, and efficient operation. The suction and discharge lines are designed with shock loops ( 40 ) to absorb the strain and stress that the starting torque, steady state operation, and shut down cycle impose on the refrigerant tubing. Each unit comes standard with a filter/dryer ( 41 ). The condenser fan motor ( 42 ) can easily be accessed and maintained through the top. The polarized plug connection allows the motor to be changed quickly and eliminates the need to snake wires through the unit. The outdoor coil uses the latest MicroChannel technology ( 43 ) for the most effective method of heat transfer. The outdoor coil is protected by optional* louvered panels, which allow unobstructed airflow while protecting the unit from both Mother Nature and vandalism. 39 These units are designed for downflow applications only ( 44 ). The return air compartment can also contain an economizer ( 45 ) The economizer, which provides free cooling when outdoor conditions are suitable and also provides fresh air to meet local requirements, comes standard with single enthalpy controls. The controls can be upgraded to dual enthalpy easily in the field. The direct drive actuator combined with gear drive dampers has eliminated the need for linkage adjustment in the field. The economizer control has a minimum 45 position setpoint, an outdoor-air enthalpy setpoint, a mixed-air temperature setpoint, and an indoor CO2 level setpoint. Barometric 47 relief ( 46 ) is standard on all economizers. Power Exhaust ( 47 ) is easily field installed. The power exhaust is housed in the barometric relief opening and is easily slipped in with a plug-in assembly. The wire harness to the economizer also has accommodations for a smoke detector. The damper minimum position, actual damper position, power exhaust on/off setpoint, mixed air temperature limit setpoint and Demand Controlled Ventilation (DCV) setpoint can be read and adjusted at the unit controller display or remotely through a network connection. The Space CO2 level, mixed air temperature, and Economizer Status (Free Cooling Available, Single or Dual Enthalpy) can be read at the unit controller display or remotely through a network connection. Economizer Faults will trigger a network Alarm and can be read at the unit controller display or remotely through a network connection. The Rheem roofcurb ( 48 ) is made for toolless assembly at the jobsite by engaging a pin into the hinged corners of adjacent curb sides, which makes the assembly process quick and easy Two economizer models exist for downflow applications (a downflow economizer with factory installed smoke detector in the return section is available. Each unit is prewired for the economizer to allow quick plug-in installation. The economizer is also available as a factory-installed option. 9

10 Model Number Identification R L H L C 120 C L 15 X X X Economizer Option (See Next Page) Factory Installed Options (See Next Page) Heating Capacity (MBH) 000 = No Resistance Heat 010 = 10 kw Resistance Heat 015 = 15 kw Resistance Heat 020 = 20 kw Resistance Heat 030 = 30 kw Resistance Heat 040 = 40 kw Resistance Heat 050 = 50 kw Resistance Heat Drive Package L = Belt Drive M = Belt Drive High Static Electrical Designation C = V, 3 PH, 60 Hz D = 460 V, 3 PH, 60 Hz Cooling Capacity (BTUH) [kw] 120 = 120,000 [35.17] Future Technical Variations C = ClearControl Design Series L = R410A Efficiency Designation H = H2AC Rooftop Unit featuring esync Integration Technology Product Classification K = Rooftop Commercial Tradebrand R = Rheem [ ] Designates Metric Conversions 10

11 Options FACTORY INSTALLED OPTION CODES FOR RLHL-C (10 TON) [35.1 kw] Option Code Hail Guard Non-Powered Convenience Outlet Low Ambient/ Freeze Stat AD x AG x AR x x JD x x BJ x x CZ x x x JE x x x NOTES: (1) High and low pressure is standard on all models. x indicates factory installed option. ECONOMIZER SELECTION FOR RLHL-C (10 TON) [35.1 kw] Option Code No Economizer DDC Single Enthalpy Economizer w/barometric Relief DDC Single Enthalpy Economizer w/barometric Relief and Smoke Detector A x H x J x x indicates factory installed option. Instructions for Factory Installed Option(s) Selection Note: Three characters following the model number will be utilized to designate a factory-installed option or combination of options. If no factory option(s) is required, nothing follows the model number. Step 1. After a basic rooftop model is selected, choose a two-character option code from the FACTORY INSTALLED OPTION SELECTION TABLE. Proceed to Step 2. Step 2. The last option code character is utilized for factory-installed economizers. Choose a character from the FACTORY INSTALLED ECONOMIZER SELECTION TABLE. Examples: RLHL-C120CL000...this unit has no factory installed options. RLHL-C120CL000ADA...this unit is equipped with hail guards. RLHL-C120CL000JDA...this unit is equipped with hail guards, low ambient and Comfort Alert. RLHL-C120CL000JDH...this unit is equipped as above and includes an Economizer with single enthalpy sensor and with barometric relief. RLHL-C120CL000AAJ...this unit is equipped with an Economizer with single enthalpy sensor and Barometric Relief with smoke detector. [ ] Designates Metric Conversions 11

12 Selection Procedure To select a Rheem RLHL-C Cooling H 2 AC Rooftop Unit featuring esync Integration Technology unit to meet a job requirement, follow this procedure, with example, using data supplied in this specification sheet. 1. DETERMINE COOLING AND HEATING REQUIREMENTS AND SPECIFIC OPERATING CONDITIONS FROM PLANS AND SPECS. Example: Voltage 240V 3 Phase 60 Hz Total cooling capacity 106,000 BTUH [31.0 kw] Sensible Cooling Capacity 82,000 BTUH [24.0 kw] Heating Capacity 150,000 BTUH [43.9 kw] *Condenser Entering Air 95 F [35.0 C] DB *Evaporator Mixed Air Entering 65 F [18.3 C] WB 78 F [25.6 C] DB *Indoor Air Flow (vertical) 3600 CFM [1699 L/s] *External Static Pressure 0.40 in. WG [.10 kpa] 2. SELECT UNIT TO MEET COOLING REQUIREMENTS. Since total cooling is within the range of a nominal 10 ton [35.1 kw] unit, enter cooling performance table at 95 F [35.0 C] DB condenser inlet air. Interpolate between 63 F [17.2 C] WB and 67 F [19.4 C] WB to determine total and sensible capacity and power input for 65 F [18.3 C] WB evaporator inlet air at 3600 CFM [1699 L/s] indoor air flow (table basis): Total Cooling Capacity = 116,450 BTUH [34.10 kw] Sensible Cooling Capacity = 97,750 BTUH [28.04 kw] Power Input (Compressor and Cond. Fans) = 8,850 watts Use formula in note (1) to determine sensible capacity at 78 F [25.6 C] DB evaporator entering air: 95,750 + (1.10 x 3,600 x (1 0.05) x (78 80)) Sensible Cooling Capacity = 88,226 BTUH [25.83 kw] 3. CORRECT CAPACITIES OF STEP 2 FOR ACTUAL AIR FLOW. Select factors from airflow correction table at 3600 CFM [1699 L/s] and apply to data obtained in step 2 to obtain gross capacity: Total Capacity = 116,450 x 1 = 116,450 BTUH [34.10 kw] Sensible Capacity = 88,266 x 1 = 88,226 BTUH [25.83 kw] Power Input = 8,850 x 1 = 8,850 Watts These are Gross Capacities, not corrected for blower motor heat or power. 5. CALCULATE INDOOR BLOWER BTUH HEAT EFFECT FROM MOTOR WATTS, STEP 4. 1,576 x = 5,377 BTUH [1.57 kw] 6. CALCULATE NET COOLING CAPACITIES, EQUAL TO GROSS CAPACITY, STEP 3, MINUS INDOOR BLOWER MOTOR HEAT. Net Total Capacity = 116,450 5,377 = 111,073 BTUH [32.52 kw] Net Sensible Capacity = 88,226 5,377 = 82,849 BTUH [24.26 kw] 7. CALCULATE UNIT INPUT AND JOB EER. Total Power Input = 8,850 (step 3) + 1,576 (step 4) = 10,426 Watts EER = Net Total BTUH [kw] (step 6) = 111,073 = Power Input, Watts (above) 10, SELECT UNIT HEATING CAPACITY. From Heater Kit Table select kw to meet heating capacity requirement multiply kw x 3412 to convert to BTUH Use 50 kw Heater Kit Heater Kit Model RXJJ-CC50C Heating Capacity = 163,750 BTUH [47.9 kw] Add indoor blower heat effect (STEP 5) to Heater Kit Capacity to get total heating capacity: 163, ,377 = 169,127 BTUH [49.5 kw] 9. CHOOSE MODEL RLHL-C120CL050 *NOTE: These operating conditions are typical of a commercial application in a 95 F/79 F [35 C/26 C] design area with indoor design of 76 F [24 C] DB and 50% RH and 10% ventilation air, with the unit roof mounted and centered on the zone it conditions by ducts. [ ] Designates Metric Conversions 4. DETERMINE BLOWER SPEED AND WATTS TO MEET SYSTEM DESIGN. Enter Indoor Blower performance table at 3600 CFM [1699 L/s]. Total ESP (external static pressure) per the spec of 0.40 in. WG [.10 kpa] includes the system duct and grilles. Add from the table Component Air Resistance, 0 in. WG [.00 kpa] for wet coil, in. WG [.02 kpa] for downflow air flow, for a total selection static pressure of (0.5) in. WG [.12 kpa], and determine: RPM = 769 WATTS = 1,576 DRIVE = L (standard 2 H.P. motor) 12

13 esync Integration Technology Cost Savings Example Whenever a call for cooling is present, the H 2 AC Rooftop Unit samples the temperature of the storage tank. If it is below the setpoint, then heat that is normally rejected to the outdoor condenser coil is instead rejected to a heat exchanger in the H 2 AC Rooftop Unit to provide hot water. The preheated water leaving the storage tank must then be heated to the desired final temperature by a separate tank or tankless heater. The cost savings are provided by the difference between heating water from the ground temperature to the final hot water temperature versus heating water from the storage tank temperature to the final hot water temperature. 1. Calculate daily cost of operation of existing water heating equipment. Hot Water Consumption (gallons) Water Specific Weight (lbm/gallon) Hot Water Temperature ( F) Ground Water (Cold Water) Temperature ( F) *Required Water Heating Output (therms) * = 2100 gallons x 8.33 lbm/gallon x (185 F F) x 1 Btu/(1 lbm x 1 F) x (1 therm/100,000 Btu) Water Heater Type Water Heater Thermal Efficiency Water Heating Input (therms) Fuel Cost Water Heating Cost Natural Gas $1.077 per therm ($/thm) $26.26 Propane Gas $1.210 per gallon of Propane ($/gal) $32.22 Natural Gas $1.077 per therm ($/thm) $22.35 Propane Gas $1.210 per gallon of Propane ($/gal) $27.43 Electric $0.127 per kilowatt hour ($/kwh) $74.08 Tankless Natural Gas $1.077 per therm ($/thm) $22.35 Tankless Propane Gas $1.210 per gallon of Propane ($/gal) $27.43 (Required Water Heating Output/Thermal Efficiency = Water Heating Input) 2. Calculate daily cost savings from H 2 AC Rooftop Unit operation. Daily hours when hot water is required without air conditioner operation available 0 Storage Tank Leaving Water Temperature ( F) - Maximum temperature is 125 F 120 Required H 2 AC Rooftop Unit Water Heating Output (thm) = 2100 gallons x 8.33 lbm/gallon x (120 F F) x 1 Btu/(1 lbm x 1 F) x (1 therm/100,000 Btu) x ((24-0)/24) 8.13 Water Heater Type Water Heater Thermal Efficiency Water Heating Input (therms) **(Required Water Heating Output - Required H 2 AC Rooftop Unit Water Heating Output)/Thermal Efficiency Fuel Cost Water Heating Cost Natural Gas $1.077 per therm ($/thm) $15.31 Propane Gas $1.210 per gallon of Propane ($/gal) $18.79 Natural Gas $1.077 per therm ($/thm) $13.03 Propane Gas $1.210 per gallon of Propane ($/gal) $15.99 Electric $0.127 per kilowatt hour ($/kwh) $43.18 Tankless Natural Gas $1.077 per therm ($/thm) $13.03 Tankless Propane Gas $1.210 per gallon of Propane ($/gal) $15.99 t t The savings in fuel to provide hot water are offset a bit by higher air conditioning costs in the water heating mode especially during mild weather. The calculations below provide the electrical cost increase for the worst case (mild weather) and for the best case (summer design conditions). The results assume AHRI return air conditions (80 F db/ 67 F wb). 3. Calculate daily increase in electricity cost from esync operation. Summer Design Outdoor Air Temperature ( F) 95 Minimum Outdoor Air Temperature, Cooling Mode ( F) 75 Gross Watts Air Conditioning Summer Design Outdoor Air Temperature (kw) from Gross Capacity Tables 9.00 Gross Watts Air Conditioning Minimum Outdoor Air Temperature Cooling Mode (kw) from Gross Capacity Tables 7.40 Gross Watts Water Heating Storage Tank Leaving Water Temperature (kw) from Tables 9.60 Gross Capacity Water Heating Storage Tank Leaving Water Temperature (Btuh) from Tables 153,500 Add Indoor Blower BTUH heat effect from Step 5 of the Unit Selection Procedure 5,377 Net Capacity Water Heating Storage Tank Leaving Water Temperature (Btuh) 158,877 Correction Factor for H 2 AC Rooftop Unit Operation during occupied hours 0.86 Water Heating Mode Time (hours) = thm x (100,000 Btuh/thm) / (0.86 x 158,877 Btuh) Summer Design Conditions savings decrease = ((24-0) hrs/ 24 hrs) x hrs x (9.6-9) kw x $/kwh -$0.45 Minimum Outdoor Air Temperature savings decrease = ((24-0) hrs/ 24 hrs) x hrs x ( ) kw x $/kwh -$1.66 t 4. Subtract the values above from the Water Heating Costs in step 2 to find total daily savings For example, replacing a natural gas storage tank system with an H 2 AC Rooftop Unit and a tankless natural gas system will conservatively save $ $ $1.66 = $11.57 per day. The new cost of heating water is only 56% of the original cost. Adding an H 2 AC Rooftop Unit to an existing natural gas water heater will conservatively save $ $ $1.66 = $9.29 per day. The new cost of heating water is only 65% of the original cost. 13

14 esync Integration Technology Typical Piping Example The H 2 AC system with storage tank can provide any water heating system, tank or tankless, with preheated water. The water heating system must be sized properly for each installation. The tankless system shown below is just one example of a typical installation and may not be suitable for all applications. See the water heater manufacturers recommendation for sizing and product specifications. 14

15 esync Integration Technology Typical Piping Maximum Length The chart below shows the H 2 AC Rooftop Unit Water Flow Rate versus the Available Pressure Water Pressure drop. When selecting the location of the H 2 AC Rooftop Unit, do not exceed the maximum Equivalent Feet of tubing between the H 2 AC Rooftop Unit and the storage tank to ensure proper performance at available voltage. Higher GPM will provide a higher storage tank temperature. Water Flow Rate (GPM Water Flow Rate (GPM) (15 GPM minimum) Water Velocity (fps) Available Pressure Head at 230/460 Volts (Head ft.) (psig) Maximum Equivalent Feet of 1-1/2" Nom. Type L Copper Tubing (ft.) Available Pressure Head at 208 Volts (Head ft.) (psig) Maximum Equivalent Feet of 1-1/2" Nom. Type L Copper Tubing (ft.) In a closed system application the static (elevation) head is ignored. Only the pipe friction is used to calculate pressure drop. 15

16 esync Integration Technology Piping Equivalent Length PROCEDURE FOR CALCULATING THE TOTAL EQUIVALENT LENGTH OF TUBING PIPE FITTINGS BY NUMBER List all piping components from the Storage Tank to the H 2 AC Rooftop Unit and back to the storage tank. The equivalent length of straight tubing is the same as the actual length. The equivalent length of fittings are obtained from the table below. Sum all of the individual component lengths to find the Total Equivalent Length Pressure Loss in Fitting and Valve. PRESSURE LOSS IN FITTINGS AND VALVES EXPRESSED AS EQUIVALENT LENGTH OF TUBE (FT.) Tube Nominal or Standard Size (inches) 1-1/2" 2" Fittings Valves No. Standard 90 Elbow Standard 45 Elbow Tee - Side Branch Tee - Straight Run Coupling Ball Gate 0.5 Btfly 7.5 Check Data condensed from Table 7 Pressure Loss in Fittings & Valves Expressed as Equivalent Length of Tube of the Copper Development Association. Allowances are for streamlined soldered fittings and recessed threaded fittings. The equivalent lengths presented above are based upon a C factor of 150 in the Hazen-Williams friction loss formula. The lengths shown are rounded to the nearest half foot. TOTAL EQUIVALENT LENGTH OF FITTINGS Inlet EQUIVALENT Length (ft.) No. Outlet EQUIVALENT Length (ft.) 1 side branch Tee 7 18 straight tubing 1 2 straight tubing elbow 4 3 Check valve straight tubing straight tubing /2" MPT adapter ➀ 1 5 straight run Tee Ball Isolation valve straight tubing /2" MPT adapter ➀ 1 7 Ball valve straight tubing 20 8 straight tubing 5 25 coupling elbow 4 26 straight tubing straight tubing elbow 4 11 coupling straight tubing 4 12 straight tubing Ball valve /2" MPT adapter ➀ 1 30 straight tubing Ball Isolation valve straight run Tee /2" MPT adapter ➀ 1 32 straight tubing straight tubing Check valve elbow - fitting 4 34 straight tubing elbow 4 Total Equivalent Length *NOTES: ➀ For threaded fittings, double the allowances shown in the table. Data condensed from Table 7 of the Copper Development Organization. Allowances are for streamlined soldered fittings and recessed threaded fittings. The equivalent lengths presented above are based upon a C factor of 150 in the Hazen-Williams friction loss formula. The lengths shown are rounded to the nearest half foot. 16

17 General Data NOM. SIZES 10 TON [35.1 kw] ASHRAE COMPLIANT MODELS Model RLHL- Series C120CL C120CM C120DL C120DM Cooling Performance 1 CONTINUED Gross Cooling Capacity Btu [kw] 119,000 [34.87] 119,000 [34.87] 119,000 [34.87] 119,000 [34.87] EER/SEER /NA 11.25/NA 11.25/NA 11.25/NA Nominal CFM/AHRI Rated CFM [L/s] 4000/3600 [1888/1699] 4000/3600 [1888/1699] 4000/3600 [1888/1699] 4000/3600 [1888/1699] AHRI Net Cooling Capacity Btu [kw] 115,000 [33.69] 115,000 [33.69] 115,000 [33.69] 115,000 [33.69] Net Sensible Capacity Btu [kw] 85,300 [24.99] 85,300 [24.99] 85,300 [24.99] 85,300 [24.99] Net Latent Capacity Btu [kw] 29,700 [8.7] 29,700 [8.7] 29,700 [8.7] 29,700 [8.7] IEER Net System Power kw Compressor No./Type 1/Scroll 1/Scroll 1/Scroll 1/Scroll Outdoor Sound Rating (db) Outdoor Coil Fin Type Louvered Louvered Louvered Louvered Tube Type MicroChannel MicroChannel MicroChannel MicroChannel MicroChannel Depth in. [mm] 1 [25.4] 1 [25.4] 1 [25.4] 1 [25.4] Face Area sq. ft. [sq. m] 27 [2.51] 27 [2.51] 27 [2.51] 27 [2.51] Rows / FPI [FPcm] 1 / 23 [9] 1 / 23 [9] 1 / 23 [9] 1 / 23 [9] Indoor Coil Fin Type Louvered Louvered Louvered Louvered Tube Type Rifled Rifled Rifled Rifled Tube Size in. [mm] [9.5] [9.5] [9.5] [9.5] Face Area sq. ft. [sq. m] 13.5 [1.25] 13.5 [1.25] 13.5 [1.25] 13.5 [1.25] Rows / FPI [FPcm] 2 / 22 [9] 2 / 22 [9] 2 / 22 [9] 2 / 22 [9] Refrigerant Control TX Valves TX Valves TX Valves TX Valves Drain Connection No./Size in. [mm] 1/1 [25.4] 1/1 [25.4] 1/1 [25.4] 1/1 [25.4] Outdoor Fan Type Propeller Propeller Propeller Propeller No. Used/Diameter in. [mm] 2/24 [609.6] 2/24 [609.6] 2/24 [609.6] 2/24 [609.6] Drive Type/No. Speeds Direct/1 Direct/1 Direct/1 Direct/1 CFM [L/s] 8400 [3964] 8400 [3964] 8400 [3964] 8400 [3964] No. Motors/HP 2 at 1/3 HP 2 at 1/3 HP 2 at 1/3 HP 2 at 1/3 HP Motor RPM Indoor Fan Type FC Centrifugal FC Centrifugal FC Centrifugal FC Centrifugal No. Used/Diameter in. [mm] 1/15x15 [381x381] 1/15x15 [381x381] 1/15x15 [381x381] 1/15x15 [381x381] Drive Type/No. Speeds Belt/Variable Belt/Variable Belt/Variable Belt/Variable No. Motors Motor HP Motor RPM Motor Frame Size Potable Water Heat Recovery Heat Exchanger Type Vented Double-Wall Flat Plate Vented Double-Wall Flat Plate Vented Double-Wall Flat Plate Vented Double-Wall Flat Plate Material Cu Brazed Stainless Steel Cu Brazed Stainless Steel Cu Brazed Stainless Steel Cu Brazed Stainless Steel No. Flat Plates Unit Water Connections No./Size in. [mm] 2/1.625 [41.3] 2/1.625 [41.3] 2/1.625 [41.3] 2/1.625 [41.3] Water Pump - Type Centrifugal Centrifugal Centrifugal Centrifugal Drive Type/No. Speeds Direct/1 Direct/1 Direct/1 Direct/1 Housing Material Stainless Steel Stainless Steel Stainless Steel Stainless Steel GPM [L/s] 30 [1.89] 30 [1.89] 30 [1.89] 30 [1.89] Head Pressure ft. H20 [kpa] 25 [74.7] 25 [74.7] 25 [74.7] 25 [74.7] Motor HP 1/3 1/3 1/3 1/3 Motor RPM Filter - Type Disposable Disposable Disposable Disposable Furnished Yes Yes Yes Yes (NO.) Size Recommended in. [mm x mm x mm] (6)2x18x18 [51x457x457] (6)2x18x18 [51x457x457] (6)2x18x18 [51x457x457] (6)2x18x18 [51x457x457] Refrigerant Charge Oz. [g] C217.6 [6169] [6169] [6169] [6169] Weights Net Weight lbs. [kg] 984 [446] 992 [450] 984 [446] 992 [450] Ship Weight lbs. [kg] 1021 [463] 1029 [467] 1021 [463] 1029 [467] See Page 18 for Notes. [ ] Designates Metric Conversions 17

18 General Data Notes NOTES: 1. Cooling Performance is rated at 95 F ambient, 80 F entering dry bulb, 67 F entering wet bulb. Gross capacity does not include the effect of fan motor heat. AHRI capacity is net and includes the effect of fan motor heat. Units are suitable for operation to 20% of nominal cfm. Units are certified in accordance with the Unitary Air Conditioner Equipment certification program, which is based on AHRI Standard 340/ EER and/or SEER are rated at AHRI conditions and in accordance with DOE test procedures. 3. Integrated Energy Efficiency Ratio (IEER) is rated in accordance with AHRI Standard 340/ Outdoor Sound Rating shown is tested in accordance with AHRI Standard

19 Gross Systems Performance Data GROSS SYSTEMS PERFORMANCE DATA C120 O UT D O O R D R Y B U LB T E M PE R AT U R E F [ C] 75 [23.9] 80 [26.7] 85 [29.4] 90 [32.2] 95 [35] 100 [37.8] 105 [40.6] 110 [43.3] 115 [46.1] ENTERING INDOOR 80 F [26.7 C] dbe ➀ wbe 71 F [21.7 C] 67 F [19.4 C] 63 F [17.2 C] CFM [L/s] 4800 [2266] 3600 [1699] 3200 [1510] 4800 [2266] 3600 [1699] 3200 [1510] 4800 [2266] 3600 [1699] 3200 [1510] DR ➀ Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power Total BTUH [kw] Sens BTUH [kw] Power DR Depression ratio dbe Entering air dry bulb wbe Entering air wet bulb [43.0] 98.7 [28.9] [42.3] 98.6 [28.9] [41.4] 97.9 [28.7] [40.5] 96.8 [28.4] [39.5] 95.1 [27.9] [38.4] 92.9 [27.2] [37.3] 90.2 [26.4] [36.1] 87.0 [25.5] [34.9] 83.3 [24.4] [40.6] 77.0 [22.6] [39.8] 77.0 [22.6] [39.0] 76.7 [22.5] [38.1] 75.9 [22.2] [37.2] 74.6 [21.9] [36.2] 72.9 [21.4] [35.2] 70.9 [20.8] [34.1] 68.3 [20.0] [32.9] 65.3 [19.1] [39.8] 70.4 [20.6] [39.0] 70.4 [20.6] [38.2] 70.2 [20.6] [37.4] 69.5 [20.4] [36.4] 68.3 [20.0] [35.5] 66.7 [19.5] [34.5] 64.9 [19.0] [33.4] 62.5 [18.3] [32.2] 59.7 [17.5] 10.9 Total Total capacity x 1000 BTUH Sens Sensible capacity x 1000 BTUH Power KW input [40.7] [33.9] [39.9] [33.8] [39.0] [33.7] [38.1] [33.3] [37.1] [32.8] [36.1] [32.2] [35.0] [31.4] [33.8] [30.5] [32.6] [29.4] 11.3 GROSS WATER HEATING CAPACITY C120 O UT L E T W AT E R T E M PE R AT U R E F [ C] 75 [23.9] 80 [26.7] 85 [29.4] 90 [32.2] 95 [35.0] 100 [37.8] 105 [40.6] 110 [43.3] 115 [46.1] 125 [51.7] [38.4] 92.1 [27.0] [37.6] 92.2 [27.0] [36.8] 91.8 [26.9] [35.9] 91.0 [26.7] [35.0] 89.7 [26.3] [34.0] 88.1 [25.8] [33.0] 86.0 [25.2] [31.8] 83.4 [24.4] [30.7] 80.4 [23.6] [37.6] 84.9 [24.9] [36.9] 85.0 [24.9] [36.0] 84.6 [24.8] [35.2] 83.9 [24.6] [34.3] 82.8 [24.3] [33.3] 81.3 [23.8] [32.3] 79.4 [23.3] [31.2] 77.0 [22.6] [30.1] 74.2 [21.7] [38.9] [37.8] [38.1] [37.8] [37.2] [37.2] [36.3] [36.3] [35.3] [35.3] [34.2] [34.2] [33.1] [33.1] [31.9] [31.9] [30.7] [30.7] [36.6] [30.5] [35.9] [30.5] [35.1] [30.4] [34.2] [30.2] [33.3] [29.8] [32.3] [29.4] [31.2] 98.0 [28.7] [30.1] 95.5 [28.0] [28.9] 92.5 [27.1] [35.9] 96.3 [28.2] [35.2] 96.5 [28.3] [34.4] 96.2 [28.2] [33.5] 95.4 [28.0] [32.6] 94.3 [27.6] [31.6] 92.8 [27.2] [30.6] 90.8 [26.6] [29.5] 88.6 [26.0] [28.4] 85.8 [25.1] 10.7 NOTES: ➀ When the entering air dry bulb is other than 80 F [27 C], adjust the sensible capacity from the table by adding [1.10 x CFM x (1 DR) x (dbe 80)]. ENTERING INDOOR 80 F [26.7 C] dbe wbe 71 F [15.5 C] 67 F [19.4 C] 63 F [19.4 C] CFM [L/s] 4800 [2266] 3600 [1699] 3200 [1510] 4800 [2266] 3600 [1699] 3200 [1510] 4800 [2266] 3600 [1699] 3200 [1510] Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power Total BTUH [kw] Power DR Depression ratio dbe Entering air dry bulb wbe Entering air wet bulb [49.3] [48.7] [48.0] [47.4] [46.7] [46.1] [45.4] [44.8] [44.1] [42.8] [48.8] [48.2] [47.5] [46.9] [46.2] [45.6] [45.0] [44.3] [43.7] [42.4] 12.3 Total Total capacity x 1000 BTUH Power KW input [47.4] [46.7] [46.1] [45.5] [44.9] [44.2] [43.6] [43.0] [42.4] [41.1] [46.2] [45.6] [44.9] [44.3] [43.6] [43.0] [42.3] [41.7] [41.0] [39.7] [45.8] [45.1] [44.5] [43.9] [43.2] [42.6] [41.9] [41.3] [40.6] [39.3] [44.4] [43.8] [43.2] [42.5] [41.9] [41.3] [40.7] [40.0] [39.4] [38.2] [43.2] [42.5] [41.9] [41.2] [40.6] [39.9] [39.3] [38.6] [38.0] [36.6] [42.7] [42.1] [41.4] [40.8] [40.2] [39.5] [38.9] [38.2] [37.6] [36.3] [41.5] [40.8] [40.2] [39.6] [38.9] [38.3] [37.7] [37.1] [36.4] [35.2] 11.5 NOTES: ➀ When the entering air dry bulb is other than 80 F [27 C], adjust the sensible capacity from the table by adding [1.10 x CFM x (1 DR) x (dbe 80)]. [ ] Designates Metric Conversions 19

20 Airflow Performance AIRFLOW PERFORMANCE 10 TON [35.1 kw] 60 HZ DOWNFLOW Air Flow CFM [L/s] Model RLHL-C120 Voltage 208/230, Phase 60 Hz External Static Pressure Inches of Water [kpa] 0.1 [.02] 0.2 [.05] 0.3 [.07] 0.4 [.10] 0.5 [.12] 0.6 [.15] 0.7 [.17] 0.8 [.20] 0.9 [.22] 1.0 [.25] 1.1 [.27] 1.2 [.30] 1.3 [.32] 1.4 [.35] 1.5 [.37] 1.6 [.40] 1.7 [.42] 1.8 [.45] 1.9 [.47] 2.0 [.50] RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W RPM W 3200 [1510] [1557] [1604] [1652] [1699] [1746] [1793] [1840] [1888] [1935] [1982] [2029] [2076] [2123] [2171] [2218] [2265] NOTE: L-Drive left of bold line, M-Drive right of bold line. Drive Package L M Motor H.P. [W] 2.0 [1491.4] 3.0 [2237.1] Blower Sheave BK90H BK65H Motor Sheave 1VP-44 1VP-44 Turns Open RPM NOTES: 1. Factory sheave settings are shown in bold type. 2. Do not set motor sheave below minimum or maximum turns open shown. 3. Re-adjustment of sheave required to achieve rated airflow at AHRI minimum External Static Pressure 4. Drive data shown is for horizontal airflow with dry coil. Add component resistance (below) to duct resistance to determine total External Static Pressure. Airflow CFM [L/s] AIRFLOW CORRECTION FACTORS* Wet Coil Downflow Economizer RA Damper Open COMPONENT AIRFLOW RESISTANCE Concentric Grill RXRN-AA61 or RXRN-AA71 & Transition RXMC-CE05 Concentric Grill RXRN-AA66 or RXRN-AA76 & Transition RXMC-CF06 Total MBH Sensible MBH Power kw Resistance Inches of Water [kpa] 3200 [1510] [.02] 0.09 [.02] 3400 [1604] [.02] 0.10 [.02] 3600 [1699] [.02] 0.11 [.03] 0.16 [.04] 3800 [1793] [.02] 0.12 [.03] 0.19 [.05] 4000 [1888] [.02] 0.13 [.03] 0.21 [.05] 4200 [1982] [.02] 0.14 [.03] 0.24 [.06] 4400 [2076] [.02] 0.15 [.04] 0.27 [.07] 4600 [2171] [.02] 0.16 [.04] 0.30 [.07] 0.30 [.07] 4800 [2265] [.03] 0.17 [.04] 0.33 [.08] 0.32 [.08] *Multiply correction factor times gross performance data resulting sensible capacity cannot exceed total capacity. [ ] Designates Metric Conversions 20

21 Electrical Data ELECTRICAL DATA RLHL- SERIES Water Pump Evaporator Fan Compressor Motor Compressor Motor Unit Information C120CL C120CM C120DL C120DM Unit Operating Voltage Range Volts 208/ / Minimum Circuit Ampacity 61/61 66/ Minimum Overcurrent Protection Device Size 60/60 70/ Maximum Overcurrent Protection Device Size 90/90 100/ No Volts 200/ / Phase RPM HP, Compressor Amps (RLA), Comp / / Amps (LRA), Comp / / HP, Compressor 2 Amps (RLA), Comp. 2 Amps (LRA), Comp. 2 No Volts 208/ / Phase HP 1/3 1/3 1/3 1/3 Amps (FLA, each) 2.4/ / Amps (LRA, each) 4.7/ / No Volts 208/ / Phase HP Amps (FLA, each) 8/8 13/ Amps (LRA, each) 56/ / No Volts 208/ / / /230 Phase HP 1/3 1/3 1/3 1/3 Amps (FLA, each) Amps (LRA, each)

22 Electric Heater Kits C120CL C120CM Model No. RLHL- RXJJ- Heater Kit Nominal kw No. of Sequence Steps 208/240 VOLT, THREE PHASE, 60 HZ, AUXILIARY ELECTRIC HEATER KITS CHARACTERISTICS AND APPLICATION Single Power Supply for Both Unit and Heater Kit Separate Power Supply for Both Unit and Heater Kit Heater Kit Air Conditioner Heater Kit Air Conditioner Rated Heater 208/240V Heater 208/240V Heater 208/240V Unit Min. Ckt. 208/240V Over Current Protective Device Size Min./Max 208V Min./Max. 240V Min. Ckt. Ampacity 208/240V Max. Fuse Size 208/240V Min. Circuit Ampacity 208/240V Over Current Protective Device Size Min./Max. 208V No Heat 61/61 60/90 60/90 61/61 60/90 60/90 CC10C 1 7.2/ / / /61 70/90 70/90 25/29 25/30 61/61 60/90 60/90 CC15C / / / /61 70/90 70/90 38/44 40/45 61/61 60/90 60/90 CC20C / / / /68 70/90 70/90 50/58 50/60 61/61 60/90 60/90 CC30C / / / /97 90/90 100/100 75/87 80/90 61/61 60/90 60/90 CC40C / / / / / / / /125 61/61 60/90 60/90 CC50C / / / / / / / /150 61/61 60/90 60/90 No Heat 66/66 70/100 70/100 66/66 70/100 70/100 CC10C 1 7.2/ / / /66 80/100 80/100 25/29 25/30 66/66 70/100 70/100 CC15C / / / /66 80/100 80/100 38/44 40/45 66/66 70/100 70/100 CC20C / / / /75 80/100 80/100 50/58 50/60 66/66 70/100 70/100 CC30C / / / / / /110 75/87 80/90 66/66 70/100 70/100 CC40C / / / / / / / /125 66/66 70/100 70/100 CC50C / / / / / / / /150 66/66 70/100 70/100 Min./Max. 240V C120DL C120DM Model No. RLHL- RXJJ- Heater Kit Nominal kw No. of Sequence Steps 480 VOLT, THREE PHASE, 60 HZ, AUXILIARY ELECTRIC HEATER KITS CHARACTERISTICS AND APPLICATION Single Power Supply for Both Unit and Heater Kit Separate Power Supply for Both Unit and Heater Kit Heater Kit Air Conditioner Heater Kit Air Conditioner Rated Heater 480V Heater 480V Heater 480V Unit Min. Ckt. 480V Over Current Protective Device Size Min./Max 480V Min./Max. 480V Min. Ckt. Ampacity 480V Max. Fuse Size 480V Min. Circuit Ampacity 480V Over Current Protective Device Size Min./Max. 480V No Heat 35 35/ /50 CC10D / /35 35/50 CC15D / /35 35/50 CC20D / /35 35/50 CC30D / /35 35/50 CC40D / /35 35/50 CC50D / /35 35/50 No Heat 38 35/ /50 CC10D / /38 35/50 CC15D / /38 35/50 CC20D / /38 35/50 CC30D / /38 35/50 CC40D / /38 35/50 CC50D / /38 35/50 *= For Canadian use only. Uses P fuses for inductive circuit. + = Field installed only. Min./Max. 480V 22

23 Dimensional Data PACKAGE AIR CONDITIONER DOWNFLOW ONLY [ ] Designates Metric Conversions ST-A

24 Dimensional Data GAS HEAT / ELECTRIC COOLING PACKAGE DOWNFLOW ONLY BOTTOM VIEW [ ] Designates Metric Conversions ST-A

25 Dimensional Data WEIGHTS Accessory Shipping lbs [kg] Operating lbs [kg] Economizer 90 [40.82] 81 [36.70] Power Exhaust 44 [19.96] 42 [19.05] Fresh Air Damper (Manual) 26 [11.79] 21 [9.53] Fresh Air Damper (Motorized) 43 [19.50] 38 [17.24] Roof Curb 14" 90 [40.82] 85 [38.60] Roof Curb 24" 140 [63.50] 135 [61.23] Capacity Tons [kw] 10 [35.1] Corner Weights by Percentage A B C D 29% 26% 21% 24% B C E CLEARANCES The following minimum clearances must be observed for proper unit performance and serviceability. D A Recommended Clearance In. [mm] Location 48 [1219] A - Front 18 [457] B - Condenser Coil 18 [457] C - Duct Side 18 [457] *D - Evaporator End 60 [1524] E - Above *Without Economizer. 48" [1219 mm] With Economizer ST-A ST-A [ ] Designates Metric Conversions 25

26 Accessories FIELD INSTALLED ACCESSORY EQUIPMENT Accessory Model Number Shipping Weight Lbs. [kg] Installed Weight Lbs. [kg] Thermostats See Thermostat Specification Sheet for Details (T11-001) No Factory Weight Available? RXJJ-CC10 (C,D,Y) 46 [20.9] 36 [16.3] Yes RXJJ-CC15 (C,D,Y) 46 [20.9] 36 [16.3] Yes Electric Heaters RXJJ-CC20 (C,D,Y) 46 [20.9] 36 [16.3] Yes RXJJ-CC30 (C,D,Y) 47 [21.3] 37 [16.8] Yes RXJJ-CC40 (C,D,Y) 49 [22.2] 39 [17.7] Yes RXJJ-CC50 (C,D,Y) 51 [23.1] 41 [18.6] Yes Economizer w/single Enthalpy (Downflow) AXRD-PJCM3 90 [40.8] 81 [36.7] Yes Economizer w/single Enthalpy and Smoke Detector (Downflow) AXRD-SJCM3 91 [41.3] 82 [37.2] Yes Dual Enthalpy Kit RXRX-AV03 1 [.5] 1 [.5] No Carbon Dioxide Sensor (Wall Mount) RXRX-AR02 3 [1.4] 2 [1.0] No Power Exhaust RXRX-BFF02 (C,D,Y) 43 [19.5] 38 [17.2] No Manual Fresh Air Damper (Horizontal Return Mounted) AXRF-JDA1 26 [11.8] 21 [9.5] No Manual Fresh Air Damper (Left Panel Mounted) AXRF-KDA1 38 [17.2] 31 [14.1] No Motor Kit for AXRF-KDA1 (Left Panel Mounted) RXRX-AW02 35 [15.9] 27 [12.2] No Modulating Motor Kit w/position feedback for AXRF-KDA1 RXRX-AW04 38 [17.2] 30 [13.6] No Motorized Fresh Air Damper (Horizontal Return Mounted) AXRF-JDB1 43 [19.5] 38 [17.2] No Roofcurb, 14" RXKG-CAE14 90 [40.8] 85 [38.5] No Roofcurb, 24" RXKG-CAE [63.5] 135 [61.2] No RXRX-CDCE [136.1] 290 [131.5] No Roofcurb Adapters RXRX-CFCE [147.4] 315 [142.9] No RXRX-CFCE [158.8] 340 [154.2] No RXRX-CGCC [204.1] 410 [186.0] No Concentric Diffuser (Step-Down, 18 x 28) RXRN-AA [90.7] 185 [83.9] No Concentric Diffuser (Step-Down, 18 x 32) RXRN-AA [112.0] 227 [103.0] No Concentric Diffuser (Flush, 18 x 28) RXRN-AA [77.1] 155 [70.3] No Concentric Diffuser (Flush, 18 x 32) RXRN-AA [79.8] 161 [73.0] No Downflow Transition (Rect. to Rect., 18 x 28) RXMC-CE05 ➀ 18 [8.2] 16 [7.3] No Downflow Transition (Rect. to Rect., 18 x 32) RXMC-CF06 ➁ 20 [9.1] 18 [8.2] No Low-Ambient Control Kit (1 Per Compressor) RXRZ-C02 3 [1.4] 2 [1.0] Yes Outdoor Coil Louver Kit AXRX-AAD02A 29 [11.3] 26 [11.8] Yes Unwired Convenience Outlet RXRX-AN01 2 [1.0] 1.5 [.7] Yes Comfort Alert (1 Per Compressor) RXRX-AZ01 3 [1.5] 2 [0.9] Yes BACnet Communication Card RXRX-AY01 1 [0.5] 1 [0.5] No LonWorks Communication Card RXRX-AY02 1 [0.5] 1 [0.5] No Commercial Storage Tank ST [136.1] 1240 [562.5] No Flush valve kit for H 2 AC Rooftop Unit RXMV-AG 12 [5.4] 11 [5.0] No Emergency Electrically Operated Water Shutoff Valve RXMV-AH 12 [5.4] 11 [5.0] No Water Storage Tank Kit RXMZ-A120A 32 [14.5] 30 [13.6] No NOTES: ➀ Used with RXRN-AA61 and RXRN-AA71 concentric diffusers. ➁ Used with RXRN-AA66 and RXRN-AA76 concentric diffusers. [ ] Designates Metric Conversions 26

27 Accessories THERMOSTATS 200-Series * Programmable 300-Series * Deluxe Programmable 400-Series * Special Applications/ Programmable 500-Series * Communicating/ Programmable * Photos are representative. Actual models may vary. For detailed thermostat match-up information, see specification sheet form number T

28 Accessories FLUSH MOUNT ROOM TEMPERATURE SENSORS FOR NETWORKED DDC APPLICATIONS ROOM TEMPERATURE SENSOR RHC-ZNS1 with TIMED OVERRIDE BUTTON 10kΩ room temperature sensor transmits room temperature to DDC system. Timed override button allows tenant to change from unoccupied temperature setpoint to occupied temperature setpoint for a preset time. ROOM TEMPERATURE SENSOR RHC-ZNS2 with TIMED OVERRIDE BUTTON and STATUS INDICATOR 10kΩ room temperature sensor transmits room temperature to DDC system. Timed override button allows tenant to change from unoccupied temperature setpoint to occupied temperature setpoint for a preset time. Status Indicator Light transmits ALARM flash code to occupied space. ROOM TEMPERATURE SENSOR RHC-ZNS3 with SETPOINT ADJUSTMENT and TIMED OVERRIDE BUTTON 10kΩ room temperature sensor with setpoint adjustment transmits room temperature to DDC system along with desired occupied room temperature setpoint. Timed override button allows tenant to change from unoccupied temperature setpoint to occupied temperature setpoint for a preset time. COMMUNICATION CARDS Field Installed BACnet COMMUNICATION CARD RXRX-AY01 The field installed BACnet Communication Card allows the RTU-C unit controller to communicate with a third party building management system that supports the BACnet Application Specific Controller device profile. The BACnet Communication Module plugs onto the unit RTU-C controller and allows communication between the RTU-C and the BACnet MSTP network. LonWorks COMMUNICATION CARD RXRX-AY02 The field installed LonWorks Communication Card allows the RTU-C unit controller to communicate with a third party building management system that supports the LonMark Space Comfort Controller (SCC) functional profile or LonMark Discharge Air Controller (DAC) functional profile. The LonMark Communication Module plugs onto the RTU-C controller and allows communication between the RTU-C and a LonWorks Network. 28

29 Accessories ECONOMIZER FOR DOWNFLOW DUCT INSTALLATION Use to Select Field Factory Installed Options Only AXRD-PJCM3 Single Enthalpy (Outdoor) and AXRD-SJCM3 Single Enthalpy with Smoke Detector RXRX-AV03 Dual Enthalpy Upgrade Kit RXRX-AR02 Optional Wall-Mounted CO 2 Sensor Features Honeywell Controls Available Factory Installed or Field Accessory Gear Driven Direct Drive Actuator Fully Modulating (0-100%) Low Leakage Dampers Slip-In Design for Easy Installation Plug-In Polarized 12-pin and 4-pin Electrical Connections Pre-Configured No Field Adjustments Necessary Standard Barometric Relief Damper Single Enthalpy with Dual Enthalpy Upgrade Kit Available CO2 Input Sensor Available Field Assembled Hood Ships with Economizer Economizer Ships Complete for Downflow Duct Application. Optional Remote Minimum Position Potentiometer (270 ohm) (Honeywell #S963B1136) is Available from Prostock. Field Installed Power Exhaust Available Prewired for Smoke Detector If connected to a Building Automation System (BAS), all economizer functions can be viewed on the (BAS), or 16 x 2 LCD screen If connected to thermostat, all economizer functions can be viewed on 16 x 2 LCD screen ADS [ ] Designates Metric Conversions 29

30 Accessories POWER EXHAUST KIT FOR AXRD-PJCM3, AXRD-SJCM3 ECONOMIZERS RXRX-BFF02 (C, D, or Y*) *Voltage Code VERTICAL AIRFLOW STA Model No. No. HP Low Speed High Speed ➀ FLA LRA Volts Phase of Fans (ea.) CFM [L/s] ➁ RPM CFM [L/s] ➁ RPM (ea.) (ea.) RXRX-BFF02C [1038] [1179] RXRX-BFF02D [1038] [1179] RXRX-BFF02Y [1038] [1179] NOTES: ➀ Power exhaust is factory set on high speed motor tap. ➁ CFM is per fan at 0" w.c. external static pressure. [ ] Designates Metric Conversions 30

31 Accessories FRESH AIR DAMPER MOTORIZED DAMPER KIT RXRX-AW02 (Motor Kit for AXRF-KDA1) a AXRF-KDA1 (Manual) DOWNFLOW OR HORIZONTAL APPLICATION ST [ ] Designates Metric Conversions ST-A MOTORIZED DAMPER KIT RXRX-AW04 (Modulating Motor Kit with position feedback for AXRF-KDA1) Features Honeywell Controls Gear Driven Direct Drive Actuator Fully Modulating (0-100%) Low Leakage Dampers Slip-In Design for Easy Installation Plug-In Polarized 12-pin and 4-pin Electrical Connections Pre-Configured No Field Adjustments Necessary Addition of Dual Enthalpy Upgrade Kit allows limited economizer function CO2 Sensor Input Available for Demand Control Ventilation (DCV) Optional Remote Minimum Position Potentiometer (270 ohm) (Honeywell #S963B1136) is available from Prostock. All fresh air damper functions can be viewed at the RTU-C unit controller display If connected to a Building Automation System (BAS), all fresh air damper functions can be viewed on the (BAS), or 16 x 2 LCD screen If connected to thermostat, all fresh air damper functions can be viewed on 16 x 2 LCD screen 31

32 Accessories FRESH AIR DAMPER (Cont.) AXRF-JDA1 (Manual) AXRF-JDB1 (Motorized) DOWNFLOW APPLICATION ADS [ ] Designates Metric Conversions 32

33 Accessories ROOFCURBS (Full Perimeter) Rheem s roofcurb design can be utilized on all 10 ton [35.1 kw] RLHL- models. Two available heights (14" [356 mm] and 24" [610 mm]) for ALL models. Quick assembly corners for simple and fast assembly. Opening provided in bottom pan to match the Thru the Curb electrical connection opening provided on the unit base pan. 1" [25 mm] x 4" [102 mm] Nailer provided. Insulating panels not required because of insulated outdoor base pan. Sealing gasket (40' [12.2 m]) provided with Roofcurb. Packaged for easy field assembly. ST-A TYPICAL INSTALLATION Roofcurb Model RXKG-CAE14 RXKG-CAE24 Height of Curb 14" [356 mm] 24" [610 mm] ROOFCURB INSTALLATION [ ] Designates Metric Conversions ST-A

34 Accessories ROOFCURB ADAPTERS OLD MODELS OLD ROOFCURB ROOFCURB ADAPTER (-)RCF, (-)REF-075/076 (-)RGF , (-)RGF (-)RGF RXRK-E50 RXRX-CDCE50 NEW MODELS (All Share Common Cabinet) (-)RGF (-)RGG, (-)REG, (-)RCG-075 (-)RGF, (-)REF, (-)RCF-085 (-)RGF, (-)REF, (-)RCF-100 (-)RGG, (-)REG, (-)RCG-100 RXRK-E54 RXRX-CFCE54 RLHL- C120 (-)RGF, (-)REF, (-)RCF-125 RXRK-E56 RXRX-CFCE56 (-)PDC-075 (-)PDC-100/101 RXPK-C12 RXRX-CGCC12 NOTE: Ductwork modifications may be necessary if the capacity and/or indoor airflow rate of replacement unit is not equivalent to that of the unit being replaced. RLHL- C120 fits on the same curb as the RLKB- A090, A102, A120, A150, A181, RLMB- A090, A102, A120, A150, RLNB- A090, A102, A120 34

35 Accessories ROOFCURB ADAPTERS (Cont.) RXRX-CDCE50 ADS Sheet 2 TOP VIEW ADS Sheet 1 [ ] Designates Metric Conversions 35

36 Accessories ROOFCURB ADAPTERS (Cont.) RXRX-CFCE54 ADS Sheet 2 TOP VIEW ADS Sheet 1 [ ] Designates Metric Conversions 36

37 Accessories ROOFCURB ADAPTERS (Cont.) RXRX-CFCE56 ADS Sheet 2 TOP VIEW ADS Sheet 1 [ ] Designates Metric Conversions 37

38 Accessories ROOFCURB ADAPTERS (Cont.) RXRX-CGCC12 ADS Sheet 2 TOP VIEW ADS Sheet 1 [ ] Designates Metric Conversions 38

39 Accessories CONCENTRIC DIFFUSER APPLICATION ST-A DOWNFLOW TRANSITION DRAWINGS RXMC-CE05 Used with RXRN-AA61 or RXRN-AA71 Concentric Diffusers. ST-A [ ] Designates Metric Conversions 39

40 Accessories DOWNFLOW TRANSITION DRAWINGS RXMC-CF06 Used with RXRN-AA66 or RXRN-AA76 Concentric Diffusers. ST-A [ ] Designates Metric Conversions 40

41 Accessories CONCENTRIC DIFFUSER STEP DOWN 18" x 28" [457.2 x mm] RXRN-AA61 (10 Ton [35.1 kw] Models) For Use With Downflow Transition (RXMC-CE05) and 18" x 28" [457.2 x mm] Supply and Return Ducts All aluminum diffuser with aluminum return air eggcrate. Built-in anti-sweat gasket. Molded fiberglass supports. Built-in hanging supports. Diffuser box constructed of sheetmetal insulated with 1" [25.4 mm] 1.5 lbs. [.7 kg] duct liner. Double deflection diffuser with the blades secured by spring steel. ADS A ADS B ADS C ENGINEERING DATA ➀ Model No. RXRN-AA61 Flow Rate CFM [L/s] Static Pressure in w.c. [kpa] Throw ➁➂ Feet [m] Neck Velocity fpm [m/s] Noise Level ➃ (dba) 3600 [1699] 0.17 [0.042] [ ] 851 [4.3] [1793] 0.18 [0.045] [ ] 898 [4.6] [1888] 0.21 [0.052] [ ] 946 [4.8] [1982] 0.24 [0.060] [ ] 993 [5.0] [2076] 0.27 [0.067] [ ] 1040 [5.3] 30 NOTES: ➀ All data is based on the air diffusion council guidelines. ➁ Throw data is based on 75 FPM Terminal Velocities using isothermal air. ➂ Throw is based on diffuser blades being directed in a straight pattern. ➃ Actual noise levels may vary due to duct design and do not include transmitted unit noise. Adequate duct attention must be provided to reduce sound output from the unit. [ ] Designates Metric Conversions 41

42 Accessories CONCENTRIC DIFFUSER STEP DOWN 18" x 32" [457.2 x 813 mm] RXRN-AA66 (10 Ton [35.1 kw] Models) For Use With Downflow Transition (RXMC-CF06) and 18" x 32" [457.2 x 813 mm] Supply and Return Ducts All aluminum diffuser with aluminum return air eggcrate. Built-in anti-sweat gasket. Molded fiberglass supports. Built-in hanging supports. Diffuser box constructed of sheetmetal insulated with 1" [25.4 mm] 1.5 lbs. [.7 kg] duct liner. Double deflection diffuser with the blades secured by spring steel. ADS A ADS B ADS C ENGINEERING DATA ➀ Model No. RXRN-AA66 Flow Rate CFM [L/s] Static Pressure in w.c. [kpa] Throw ➁➂ Feet [m] Neck Velocity fpm [m/s] Noise Level ➃ (dba) 4600 [2171] 0.31 [0.077] [ ] 841 [4.3] [2265] 0.32 [0.080] [ ] 878 [4.5] [2359] 0.34 [0.085] [ ] 915 [4.6] [2454] 0.36 [0.090] [ ] 951 [4.8] [2548] 0.39 [0.097] [ ] 988 [6.0] 30 NOTES: ➀ All data is based on the air diffusion council guidelines. ➁ Throw data is based on 75 FPM Terminal Velocities using isothermal air. ➂ Throw is based on diffuser blades being directed in a straight pattern. ➃ Actual noise levels may vary due to duct design and do not include transmitted unit noise. Adequate duct attention must be provided to reduce sound output from the unit. [ ] Designates Metric Conversions 42

43 Accessories CONCENTRIC DIFFUSER FLUSH and 18" x 28" [457.2 x mm] RXRN-AA71 (10 Ton [35.1] Models) For Use With Downflow Transition (RXMC-CE05) and 18" x 28" [457.2 x mm] Supply and Return Ducts All aluminum diffuser with aluminum return air eggcrate. Built-in anti-sweat gasket. Molded fiberglass supports. Built-in hanging supports. Diffuser box constructed of sheetmetal insulated with 1" [25.4 mm] 1.5 lbs. [.7 kg] duct liner. ADS A ADS B ADS C ENGINEERING DATA ➀ Model No. RXRN-AA71 Flow Rate CFM [L/s] Static Pressure in w.c. [kpa] Throw ➁➂ Feet [m] Neck Velocity fpm [m/s] Noise Level ➃ (dba) 3600 [1699] 0.17 [0.042] [ ] 844 [4.3] [1793] 0.18 [0.045] [ ] 891 [4.5] [1888] 0.21 [0.052] [ ] 938 [4.8] [1982] 0.24 [0.060] [ ] 985 [5.0] [2076] 0.27 [0.067] [ ] 1032 [5.2] 40 NOTES: ➀ All data is based on the air diffusion council guidelines. ➁ Throw data is based on 75 FPM Terminal Velocities using isothermal air. ➂ Throw is based on diffuser blades being directed in a straight pattern. ➃ Actual noise levels may vary due to duct design and do not include transmitted unit noise. Adequate duct attention must be provided to reduce sound output from the unit. [ ] Designates Metric Conversions 43

44 Accessories CONCENTRIC DIFFUSER FLUSH 18" x 32" [457.2 x 813 mm] RXRN-AA76 (10 Ton [35.1 kw] Models) For Use With Downflow Transition (RXMC-CF06) and 18" x 32" [457.2 x 813 mm] Supply and Return Ducts All aluminum diffuser with aluminum return air eggcrate. Built-in anti-sweat gasket. Molded fiberglass supports. Built-in hanging supports. Diffuser box constructed of sheetmetal insulated with 1" [25.4 mm] 1.5 lbs. [.7 kg] duct liner. ADS A ADS B ADS C ENGINEERING DATA ➀ Model No. RXRN-AA76 Flow Rate CFM [L/s] Static Pressure in w.c. [kpa] Throw ➁➂ Feet [m] Neck Velocity fpm [m/s] Noise Level ➃ (dba) 4600 [2171] 0.31 [0.077] [ ] 922 [4.7] [2265] 0.32 [0.080] [ ] 962 [4.9] [2359] 0.34 [0.085] [ ] 1002 [5.1] [2454] 0.36 [0.090] [ ] 1043 [5.3] [2548] 0.39 [0.097] [ ] 1083 [5.5] 45 NOTES: ➀ All data is based on the air diffusion council guidelines. ➁ Throw data is based on 75 FPM Terminal Velocities using isothermal air. ➂ Throw is based on diffuser blades being directed in a straight pattern. ➃ Actual noise levels may vary due to duct design and do not include transmitted unit noise. Adequate duct attention must be provided to reduce sound output from the unit. [ ] Designates Metric Conversions 44

45 Accessories FLUSH VALVE KIT RXMV-AG Contains two valves with union and 1-1/2" FPT connections for the H 2 AC Rooftop Unit water lines Field Installed accessory serves as the H 2 AC Rooftop Unit water shut off valves during unit servicing. Aids in the periodic flushing required for the refrigerant-to-water heat exchanger contained in the H 2 AC Rooftop Unit to remove lime and scale buildup and to prevent degradation of water heating performance. Features 3/4" threaded hose connections for draining. EMERGENCY ELECTRICALLY OPERATED WATER SHUTOFF VALVE RXMV-AH Shuts off water supply to the H 2 AC Rooftop Unit if a leak is detected by the onboard sensor Field Installed accessory provided with 1-1/2" FPT connections. Standard Port, Bronze Ball Valve for low water pressure drop. 115 VAC motor connects to alarm dry contacts on esync unit and separate power supply. Standard position indicator. Manual override standard. Mountable in any position. WATER STORAGE TANK MANIFOLD KIT RXMZ-A120A Compact tank-hugging design provides components to connect the H 2 AC rooftop unit to the water storage tank and the rest of the potable water heating system Field Installed accessory with 1-1/2" sweat connections to the H 2 AC unit and 2" sweat connections to the hot water system. Reduces plumbing errors that prevent proper operation of the H 2 AC unit. Components meet California law AB 1953 low-lead requirements. Standard Port, Bronze Ball Shutoff Valves for low water pressure drop. Bronze Check Valves prevent loss of H 2 AC water pump prime during temporary water pressure loss and prevent water backflow when Emergency Water Shutoff valve is energized. Includes Di-electric Nipples and Di-electric Unions to water storage tank for building code compliance. Includes ¾" hose bibs to bleed air out of the system after initial installation and to drain system for servicing. Includes bronze plugs for unused storage tank connections. ADS

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